Application of Digital Technologies for Expansion Planning of Integrated Energy Systems


Characteristics of studies on the


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2 Characteristics of studies on the 
integrated energy systems 
Energy systems, primarily electricity, heat supply, gas 
supply and oil supply systems, perform an important 
infrastructural function. This function is to ensure energy 
supply to consumers with the required quality of energy 
carriers and reliability. Traditionally, these systems are 
integrated in the production of electricity and heat at 
CHP plants using gas as a fuel. The potential for the 
integration of electricity, heat and gas supply systems at 
the level of energy consumption has emerged as a result 
of the development of technologies and mechanisms. 
Alternative possibilities for consumers are an active 
choice of possibilities for obtaining and using energy, for 
example, centralized heat supply from a CHP or electric 
heating, electric or gas stoves for household consumers, 
etc. As a result, the integration of energy supply systems 
at the levels of energy production and consumption leads 
to the need to jointly consider these systems as 
integrated when the tasks of expansion planning and 
operation control are solved [1-4, etc.]. The integration 
of energy systems served as an impetus for the formation 
and development of the concept of an energy hub [5-7, 
etc.]. 
Considering a set of tasks of control of integrated energy 
systems, it is advisable to divide these tasks into two 
groups: expansion planning of intelligent integrated 
energy systems and their operation control. 
As the analysis of the literature carried out in [4, 8] 
shows, the main attention of the authors is concentrated 
on the tasks of operation control, while the calculation of 
the flow distribution and its optimization in the 
integrated energy system is considered as the basic task. 
On this basis, other tasks of operation control of the 
integrated energy system are formulated and solved, in 
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